Study on Offsite Emergency Preparedness for the Industry Application of HTR-PM

Hongchun Ding, J. Tong, Liguo Zhang
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Abstract

The offsite consequence study on High Temperature Gas Cooled Reactor Pebble-bed Module (HTR-PM) shows that its emergency planning zone (EPZ) for whether plume exposure pathway or ingestion exposure pathway can both be limited within the exclusion area boundary (EAB) of nuclear power plant (NPP), which is about a few hundred meters away from the reactor. This conclusion provides theoretical basis and strong technical support for potential industrial applications of HTR-PM. By this premise, the coupling risk for the industrial application of HTR-PM is quantitatively evaluated in this paper. The results indicate that the risk increments for both HTR-PM and industrial facility due to the colocation on one site could ensure they still meet their corresponding risk criteria. On this basis, the current proper management mode is recommended for the ally of HTR-PM and industrial facilities from technical perspective, which is the onsite of this HTR-PM-industry ally can adopt the mode of separated management, while the offsite co-management. Further, the final suggestions on offsite emergency preparedness for this HTR-PM-industry ally are also given out co-considering the current policy, practice and public acceptability. This work will also support the industrial application of other advanced reactors with inherent safety features.
HTR-PM工业应用的场外应急准备研究
高温气冷堆球床模块(HTR-PM)的场外后果研究表明,无论是烟羽暴露路径还是吸入暴露路径,其应急预案区(EPZ)都可以限定在核电站的隔离区边界(EAB)内,该区域距离反应堆约几百米。这一结论为HTR-PM潜在的工业应用提供了理论依据和有力的技术支持。在此前提下,定量评价了HTR-PM工业应用的耦合风险。结果表明,在同一场地内,高低温pm和工业设施的风险增量可以确保它们仍然满足相应的风险标准。在此基础上,从技术角度推荐目前适合HTR-PM与工业设施联盟的管理模式,即HTR-PM-工业联盟的现场可以采用分离管理的模式,而异地则采用共同管理的模式。此外,结合当前政策、实践和公众可接受程度,给出了htr - pm -行业联盟异地应急准备的最终建议。这项工作也将支持其他具有固有安全特性的先进反应堆的工业应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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